首页> 外文期刊>Journal of power sources >Poisoning of Ni-Based anode for proton conducting SOFC by H_2S, CO_2, and H_2O as fuel contaminants
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Poisoning of Ni-Based anode for proton conducting SOFC by H_2S, CO_2, and H_2O as fuel contaminants

机译:H_2S,CO_2和H_2O作为燃料污染物中质子传导SOFC的镍基阳极中毒

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摘要

It is well known that conventional solid oxide fuel cells (SOFCs) based on oxide ion conducting electrolyte (e.g., yttria-stabilized zirconia, YSZ) and nickel (Ni) - ceramic cermet anodes are susceptible to poisoning by trace amount of hydrogen sulfide (H2S) while not significantly impacted by the presence of carbon dioxide (CO2) and moisture (H2O) in the fuel stream unless under extreme operating conditions. In comparison, the impacts of H2S, CO2, and H2O on proton-conducting SOFCs remain largely unexplored. This study aims at revealing the poisoning behaviors caused by H2S, CO2, and H2O for proton-conducting SOFCs. Anode-supported proton-conducting SOFCs with BaZe(0.1)Ce(0.7)Y(0.1)Yb(0.1)O(3) (BZCYYb) electrolyte and Ni-BZCYYb anode and La0.6Sr0.4Co0.2Fe0.8O3 (LSCF) cathode as well as Ni-BZCYYb/BZCYYb/Ni-BZCYYb anode symmetrical cells were subjected to low ppm-level H2S or low percentage-level CO2 or H2O in the hydrogen fuel, and the responses in cell electrochemical behaviors were recorded. The results suggest that, contrary to conventional SOFCs that show sulfur poisoning and CO2 and H2O tolerance, such proton-conducting SOFCs with Ni-BZCYYb cermet anode seem to be poisoned by all three types of "contaminants". Beyond that, the implications of the experimental observations on understanding the fundamental mechanism of anode hydrogen electrochemical oxidation reaction in proton conducting SOFCs are also discussed.
机译:众所周知,基于氧化物离子导电电解质(例如,氧化钇稳定的氧化锆,YSZ)和镍(Ni)金属陶瓷金属阳极的传统固体氧化物燃料电池(SOFC)易受痕量硫化氢(H2S)中毒的影响。 ),除非在极端操作条件下,否则不会受到燃料流中二氧化碳(CO2)和水分(H2O)的严重影响。相比之下,H2S,CO2和H2O对传导质子的SOFC的影响仍未开发。这项研究旨在揭示由H2S,CO2和H2O引起的质子传导SOFC的中毒行为。具有BaZe(0.1)Ce(0.7)Y(0.1)Yb(0.1)O(3)(BZCYYb)电解质和Ni-BZCYYb阳极以及La0.6Sr0.4Co0.2Fe0.8O3(LSCF)的阳极支撑质子传导SOFC阴极以及Ni-BZCYYb / BZCYYb / Ni-BZCYYb阳极对称电池在氢燃料中受到低ppm级的H2S或低百分比级的CO2或H2O的影响,并记录了电池电化学行为的响应。结果表明,与表现出硫中毒以及对CO2和H2O耐受性的常规SOFC相反,具有Ni-BZCYYb金属陶瓷阳极的质子传导SOFC似乎被所有三种“污染物”中毒。除此之外,还讨论了实验观察结果对理解质子传导SOFC中阳极氢电化学氧化反应的基本机理的意义。

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